• Aluminium Circle 1050 1060 1070 3003 for Cookware System 1
  • Aluminium Circle 1050 1060 1070 3003 for Cookware System 2
Aluminium Circle 1050 1060 1070 3003 for Cookware

Aluminium Circle 1050 1060 1070 3003 for Cookware

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
1 m.t
Supply Capability:
5000 m.t/month

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Product Introduction

Aluminum Circle/Disc is mainly used for general commercial and industrial uses, like the capacitor case, toothpaste case, medical tubes, kitchen warespray bottle, cosmetic case and glue tube case etc. With

 high quality casting and rolling coils or hot-rolled coils as raw materials ,it goes through different cold r

olling deformation. slitting, annealing and finally stamping into an aluminum disc, then packaging for 

delivery.


Product Process

Ingot/Master Alloys - Melting Furnace – Holding Furnace - D.C. Caster - Slab - Scalping - Hot Rolling Mill

 –Cold Rolling Mill – Punching – Annealing Furnace - Final Inspection – Packing - Delivery


 

Specification

  aluminium circles prices

Alloy: 1050, 1060,1070, 1100, 1200,3003 etc.

Temper: O, H12, H22, H14, H24, H26, H18 etc.

Thickness: 0.2-200mm

Width: Up to 1800mm

Length: Up to 6000mm

Surface treatment: mill finished, anodized, embossed, PVC coated

Feature

Price is much more competitive than that of other series.

Satisfy regular industrial process of stamping, drawing with good elongation, tensile strength and high formability.

Great plasticity, corrosion resistance, electrical conductiviy and termal conductivity.

Easy to be welded.

Easy to be pressure processed, extended and bent.

Application

Sign board, Advertising board, Building decoration, Car body, Cooking utensil, Lamp holder, Fan leaf, Electrical part, Chemical instrument, Machined part, Deep-drawn or spinned part, Welded part, Heat exchanger, Clock surface, Decotation, Reflective instrument etc.

Alloy

Chemical Component %≤

Si

Fe

Cu

Mn

Mg

Cr

Ni

Zn

Ti

others

Al

single

total

1050

0.25

0.4

0.05

0.05

0.05

\

\

0.05

0.03

0.03

\

99.50

1060

0.25

0.35

0.05

0.03

0.03

\

\

0.05

0.03

0.03

\

99.60

1100

0.95

0.05-0.2

0.05

\

\

\

0.1

\

0.05

0.15

99.00

1200

1.00

0.05

0.05

\

\

\

0.1

0.05

0.05

0.15

99.00

 Aluminium Circle 1050 1060 1070 3003 for Cookware

 

Q:What are the different thickness tolerances for aluminum sheets?
The thickness tolerances of aluminum sheets can vary based on the grade and application. Normally, the standard tolerances range from +/- 0.006 inches to +/- 0.015 inches. However, it is important to recognize that these tolerances can be stricter or more lenient depending on the specific requirements of the end-use application. For example, in precision-focused industries like aerospace or automotive, tighter tolerances of +/- 0.003 inches might be necessary. Conversely, for less critical applications, looser tolerances of +/- 0.020 inches may be acceptable. To determine the suitable thickness tolerances for a particular aluminum sheet, it is always advisable to consult industry standards or manufacturers' specifications.
Q:What are the maximum dimensions of aluminum sheets?
Different suppliers may have varying manufacturing capabilities, resulting in aluminum sheets having different maximum dimensions. Generally, aluminum sheets are offered in a diverse range of sizes to cater to different application needs. Typically, aluminum sheets can have a maximum width of 72 inches (6 feet) and a maximum length of approximately 240 inches (20 feet). These dimensions offer sufficient material for various projects, such as construction, manufacturing, and industrial applications. However, it is essential to consider that individual suppliers may have their own restrictions. Therefore, it is recommended to directly consult with them to ascertain the maximum dimensions available for aluminum sheets.
Q:Can aluminum sheet be used in marine environments?
Yes, aluminum sheet can be used in marine environments. Aluminum is a popular material choice for marine applications due to its excellent corrosion resistance. It forms a protective oxide layer on its surface, which helps to prevent further corrosion even in saltwater environments. Additionally, aluminum is lightweight, which makes it an ideal choice for marine applications where weight reduction is crucial. Aluminum sheet is commonly used in boat hulls, decks, and other marine structures due to its durability, strength, and resistance to corrosion.
Q:What is the shear strength of 101 aluminum sheets?
The shear strength of 101 aluminum sheets can vary depending on various factors such as the thickness of the sheet, the specific alloy composition of the aluminum, and the manufacturing process used. Generally, 101 aluminum sheets have a shear strength ranging from 20,000 to 30,000 pounds per square inch (psi). However, it is important to note that this is a general range and specific values may vary. To obtain the exact shear strength of 101 aluminum sheets, it is recommended to consult the material's technical data sheet or reach out to the manufacturer for more accurate information.
Q:I was hoping someone could explain aluminum corrosion with degreasers and cleaning formulas for automotive cleaning. This starts with, where is this aluminum (wheels)?, what types of cleaners?, do cleaners cause corrosion? Any insights would be appreciated.
Contrary to popular believe, aluminum oxidizes just like steel. Steel rusts to a reddish color. Aluminum rusts to a white color and looks more like corrosion. Aluminum cleaners or cleaners safe for aluminum usually clean without staining the aluminum surface. Hardly any cleaner for for automotive use will corrode aluminum. Visit your local auto parts store and read the labels for a wheel cleaner that is 'safe' for aluminum. You should be able to use it on all aluminum surfaces.
Q:What are the different types of surface treatments available for architectural aluminum sheets?
There are several different types of surface treatments available for architectural aluminum sheets. These treatments are designed to enhance the appearance, durability, and performance of the aluminum, making it suitable for a wide range of architectural applications. One common type of surface treatment is anodizing. Anodizing involves immersing the aluminum sheet in an electrolytic solution and applying an electric current to create a protective oxide layer on the surface. This oxide layer can be dyed to achieve a desired color or left clear for a natural metallic appearance. Anodized aluminum sheets are known for their excellent corrosion resistance, scratch resistance, and color stability. Another type of surface treatment is powder coating. Powder coating involves applying a dry powder electrostatically to the aluminum sheet and then curing it in an oven. The powder melts and fuses to the surface, creating a smooth and durable finish. Powder coating provides excellent color retention, weather resistance, and resistance to chipping and cracking. A third type of surface treatment is PVDF coating. PVDF (polyvinylidene fluoride) coating is a high-performance fluoropolymer resin that is applied to the aluminum sheet through a coil coating process. PVDF coatings offer exceptional resistance to fading, chalking, and chemical attack, making them ideal for exterior applications where color retention and durability are key. Additionally, there are various mechanical surface treatments available for architectural aluminum sheets. These treatments, such as brushing or polishing, can provide a desired texture or reflectivity to the surface. Mechanical treatments can be used to create a brushed, satin, or mirror-like finish, adding aesthetic appeal to the aluminum sheet. In summary, the different types of surface treatments available for architectural aluminum sheets include anodizing, powder coating, PVDF coating, and mechanical treatments. Each treatment offers unique benefits and characteristics, allowing architects and designers to choose the most suitable option for their specific project requirements.
Q:I have a project on the aluminum element. What are the advantages and disadvantages of this element?...What are the risks/dangers?...Thank you so much ---And please tell me where I could find this information too.
Disadvantages: * Far more expensive that steel. * Limited to certain geometric features using economical processes. * Abrasive to tooling (aluminum oxide is very abrasive). * Difficult to weld. * Prone to severe spring back. Advantages: Aluminum is the preferred choice for fencing due to several inherent advantages of aluminum. The main advantage is that aluminum components do not rust as easily as iron. Aluminum fences are given a powder-coat finish that protects the surfaces. This kind of a finish also enhances its appearance and provides a smooth surface for painting, if desired. All the components of the fence are drilled and powder-coated prior to assembly. Extreme care is taken during assembly by using sturdy fasteners, brackets, and rivets. Wherever these fasteners, etc., need to be visible, attractive stainless steel ones are used. This provides both looks and strength. As aluminum is an easy metal to work with, a plethora of style choices and adornment options are made available to clients. The flexibility of the metal allows for several designs that can complement the facade of the structure they are installed around.
Q:What are the different types of aluminum sheets available in the market?
There are several different types of aluminum sheets available in the market, including plain aluminum sheets, tread plates, perforated aluminum sheets, and decorative aluminum sheets.
Q:What are the different types of finishes used for decorative aluminum sheet?
There are several different types of finishes that can be used for decorative aluminum sheet to enhance its appearance and provide added protection. Some of the most common finishes include: 1. Mill finish: This is the standard finish that aluminum sheets have when they come straight from the mill. It has a smooth, shiny appearance but lacks any additional treatments or coatings. 2. Anodized finish: This finish involves an electrochemical process that creates a durable, corrosion-resistant layer on the surface of the aluminum. Anodized finishes can be clear or colored, and they provide a decorative, matte appearance. 3. Brushed finish: Also known as satin finish, this type of finish involves brushing the aluminum sheet with a fine abrasive material to create a pattern of fine lines or scratches. It gives the sheet a textured, non-reflective surface that hides any imperfections. 4. Polished finish: This finish involves polishing the aluminum sheet with a series of abrasive materials to create a smooth, reflective surface. It gives the sheet a shiny, mirror-like appearance and is often used for decorative purposes. 5. Painted finish: Aluminum sheets can also be painted with various types of coatings to provide different colors and finishes. These coatings can be applied through techniques such as powder coating, liquid painting, or coil coating, and they offer both decorative and protective benefits. 6. Embossed finish: In this type of finish, the aluminum sheet is pressed with a pattern or design to create a three-dimensional surface. Embossed finishes can vary in depth and detail, and they add texture and visual interest to the sheet. These are just a few examples of the different types of finishes used for decorative aluminum sheet. Each finish offers its own unique look and benefits, allowing for a wide range of design possibilities.
Q:Are aluminum sheets suitable for HVAC systems?
Yes, aluminum sheets are suitable for HVAC systems. Aluminum is a lightweight and durable material that provides excellent thermal conductivity, making it ideal for use in HVAC systems. It is commonly used for making ductwork, heat exchangers, and fins in air conditioning units. Aluminum sheets are corrosion-resistant, which is advantageous in environments with high humidity or exposure to moisture. Additionally, aluminum is a recyclable material, making it an environmentally friendly choice for HVAC systems. Overall, aluminum sheets offer numerous benefits and are widely used in the HVAC industry.

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